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EP 1 001 231 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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03.12.2003 Bulletin 2003/49 |
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Date of filing: 16.10.1999 |
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Gas absorption cooling apparatus
Gasabsorptions-Kühlgerät
Appareil de refroidissement à absorption de gaz
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Designated Contracting States: |
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DE FR GB IT NL SE |
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Priority: |
12.11.1998 US 108071 P 12.10.1999 US 416068
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Date of publication of application: |
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17.05.2000 Bulletin 2000/20 |
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Proprietor: Norcold, Inc. |
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Sidney,
Ohio 45365 (US) |
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Inventor: |
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- Leistner, David W.
Sidney,
Ohio 45365 (US)
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Representative: Hoeger, Stellrecht & Partner |
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Uhlandstrasse 14 c 70182 Stuttgart 70182 Stuttgart (DE) |
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References cited: :
DE-B- 1 025 910 DE-C- 928 952 US-A- 2 269 099 US-A- 3 875 369 US-E- R E25 782
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DE-B- 1 033 227 GB-A- 549 190 US-A- 2 368 374 US-A- 4 257 758
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
BACKGROUND OF THE INVENTION
[0001] This invention relates generally to a gas absorption refrigerator, such as typically
equips a recreational vehicle (RV), boat or a trailer home. More particularly, the
invention relates to a gas absorption refrigerator with increased cooling power compared
with a conventional RV refrigerator without extending the refrigerator cabinet in
an upward direction. This cooperative arrangement of vehicle space and refrigerator
components enables the refrigerator cold compartment to be enlarged in a horizontal
direction.
[0002] Recreational vehicles are commonly equipped with refrigerators for cooling and preserving
food and drinks. Such refrigerators are usually conventional gas absorption-type refrigerators
which use a heat source to effect refrigeration. Absorption refrigerators are favored
in vehicles such as recreational vehicles because a compressor is not required and
the heat generator can be either an electrical resistance heater or a gas heater and
allow selection between the heat sources. The gas heater can be fueled by propane
gas which is usually carried on a recreational vehicle.
[0003] In an absorption refrigerator the heat generator heats a solution of a refrigerant
and an absorbent. Heating the solution releases a portion of the refrigerant from
the solution in the form of a vapor. The refrigerant vapor is condensed in a cooling
condenser. The refrigerant is boiled in the evaporator, which removes heat from the
insulated compartment. The refrigerant vapor is combined back into the solution in
the absorber and the combined solution is directed back to the generator.
[0004] It is well known in the art that absorption refrigeration units without special provisions
cannot function when significantly inclined from the vertical, typically above 3°,
due to the units' dependence on gravity and buoyancy to cause the circulation of working
fluids in the required thermodynamic cycles. This is a particular problem for RV and
other mobile refrigerators as the vehicle may not be level when in transit or parked.
It is taught in U.S. patents 3,775,996; 3,802,219; 3,851,497 and 4,458,504 that it
is desirable to incline the condenser, evaporator and absorber at significantly higher
angles, between 10° and 20°, to allow function of the refrigerator at higher angles
of inclination. This solution has a particular disadvantage, however, because the
vertical positioning of the components of the system is critical and long straight
sections of piping angled across the width of the refrigerator may cause a given component
to consume too much of the available cabinet height to allow proper vertical positioning
of other components. The problem is especially acute when the available vertical height
for the cabinet is restricted, even to the point of not allowing the normal angle
of piping inclination in a short cabinet. The aforementioned patents teach solutions
to this problem by specially configuring the condenser and absorber with shorter angled
runs of piping in complex chevron shaped arrangements.
[0005] Other refrigerators relevant to the invention are disclosed in US-A-2 368 374 and
DE-B-1 025 910.
[0006] A gas absorption refrigerator of limited cabinet height has the additional problem
that the height of the generator is restricted since it must, by necessity, be located
vertically on the cabinet below the condenser. For a given heat input, the liquid
and gas pressures created by the generator are partially determined by the height
of the generator column. If the overall length of the condenser, evaporator or absorber
is disproportionately long relative to the height of the generator or if the fluid
flow path is unduly convoluted or restricted, the fluid flow is insufficient for efficient
heat transfer and the cooling power of the refrigerator is reduced.
SUMMARY OF THE INVENTION
[0007] Accordingly, this invention provides for the combination of two gas absorption cooling
units as defined in claim 1, in a manner which overcomes the problems and disadvantages
of the conventional techniques in the art. Briefly, the invention includes a unique
configuration of a plurality of gas absorption cooling systems which are fastened,
attached or connected so as to share a common cabinet heat source, generator housing
and controls. The combination of two gas absorption cooling units results in a system
which provides additional cooling power than is otherwise achievable in the same vertical
space occupied by the refrigerator. Each individual cooling system regains the desirable
aspect ratio by being taller than it is wide. This enables RV builders to construct
refrigerator configurations within the living space in the RV that would have been
impossible prior to this invention due to height limitations on the cooling systems.
[0008] Further objects, features and advantages of the invention will become apparent from
a consideration of the following description when taken in connection with the accompanying
drawing.
BRIEF DESCRIPTION OF THE DRAWING
[0009] Further features and advantages of the invention will become apparent from the discussion
and accompanying drawing, in which:
Figure 1 is a perspective view of an RV refrigerator cabinet showing the gas absorption
cooling system of this invention mounted on the rear side of the cabinet.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0010] The following description of the preferred embodiment is merely exemplary in nature,
and is in no way intended to limit the invention or its application or uses.
[0011] The cooling apparatus 10 of this invention is shown in Fig. 1 mounted on the back
wall 12 of a refrigerator cabinet 14 which encloses an insulated compartment 16. The
cooling apparatus 10 consists of two systems, A and B, each consisting of conventional
gas absorption cooling components, namely an absorber 18, an evaporator 20, a condenser
22, and a generator 24. The systems A and B share a DC electrical heater 26, an AC
electrical heater 28, a gas burner 30 and a single burner and control box 32 with
a single gas flue 34. The generators 24, heaters 26 and 28, and the upper portion
of the flue 34 are contained within a generator enclosure 36.
[0012] Presently, each gas absorption cooling system requires a set of controls to monitor
the internal refrigerator temperature and control the heat to its generator area in
this manner. This invention provides a combination of gas absorption cooling systems
which allows a second gas absorption cooling system's generator to be heated in conjunction
with another gas absorption system's generator using a single set of controls. The
two gas absorption cooling systems (system "A" and system "B") are joined in the generator
area in such a way that a single gas burner and/or a electrical heater unit can provide
heat to both generators. The combination of the two gas absorption cooling units results
in a system which provides additional cooling power than is otherwise achievable in
a limited vertical space because the height of the generator, and consequently the
system fluid flow, is matched to the length of the condenser, generator and evaporator.
Additionally, because the desired height to width ratio of each system is increased,
the generally horizontal piping runs may be made at higher angles to allow satisfactory
tolerance of vehicle inclination.
[0013] This invention enables the possibility for providing gas absorption cooling to refrigerator
configurations which otherwise would be unable to efficiently use gas absorption cooling
due to height limitations. The use of a common heat source, controls and generator
box to power a plurality of absorption systems eliminates duplication of components.
By applying heat energy to one absorption system generator, a plurality of absorption
systems receives sufficient heat energy and fluid flow to function as intended. The
arrangement of components in this invention provides additional absorption refrigeration
performance in an application where height of the appliance is limited, and still
accommodates off-level operation. Additionally, the use of two cooling systems allows
cooling at a reduced level if one system should fail. The invention is easily manufactured
using conventionally configured gas absorption refrigeration components.
1. A gas absorption refrigeration apparatus comprising:
a. a plurality of separate gas absorption cooling systems consisting of a generator,
a condenser, an evaporator, an absorber and tubing connecting the aforesaid parts
to form a complete circulation system for a refrigerant, an absorption liquid and
an inert gas;
b. said gas absorption cooling systems being mounted to a common cabinet said evaporators
of each said system being located within a common thermally insulated compartment
within said cabinet; and
c. the generator of each said system sharing a common heat source.
2. The apparatus according to Claim 1 wherein said gas absorption cooling systems are
disposed alongside one another on a common wall of the cabinet.
3. The apparatus of Claim 1 wherein said heat source consists of a gas burner and an
electrical resistance heater unit.
4. The apparatus of Claim 3 wherein said electrical resistance heater unit consists of
an alternating current electrical resistance-heater, and a direct current resistance
heater.
5. The apparatus according to Claim 3 wherein a single control unit selects and controls
the type of heat provided by said heat source.
6. The apparatus according to Claim 5 further including said control unit integral with
a burner box with a single gas burner and flue.
7. The apparatus according to Claim 1 where the generators and heat source are housed
within a common generator enclosure.
8. A method for combining a plurality of gas absorption cooling systems to a common cabinet
comprising the steps of:
a. providing a plurality of separate gas absorption cooling systems consisting of
a generator, a condenser, an evaporator, an absorber and tubing connecting the aforesaid
parts to form a complete circulation system for a refrigerant, an absorption liquid
and an inert gas;
b. providing a cabinet having at least one wall;
c. mounting said gas absorption cooling systems to the cabinet;
d. providing a heat source;
e. locating said generators and said heat source in close proximity such that said
generators share said heat source;
f. providing a thermally insulated compartment within said cabinet; and
g. locating said evaporators commonly within said thermally insulated compartment.
9. The method of Claim 8 including the further step of mounting said gas absorption cooling
systems on a common wall of the cabinet.
10. The method of Claim 8 wherein said heat source consists of a gas burner and an electrical
resistance heater unit.
11. The method of Claim 8 including the further steps of providing an alternating current
electrical resistance heater and a direct current electrical resistance heater and
combining said alternating current electrical resistance heater, and said direct current
electrical resistance heater in said electrical resistance heater unit.
12. The method of Claim 10 including the further steps of providing a single control unit
capable of selecting and controlling the type of heat provided by said heat source,
installing said control unit on said cabinet and establishing electrical or mechanical
control connections to said heat source.
13. The method of Claim 12 including the further steps of providing a burner box with
a single gas burner, flue and an integral control unit and installing said burner
box on said cabinet.
14. The method of Claim 8 including the further steps of providing a single generator
enclosure, installing said generator enclosure on said cabinet and housing said generators
and heat source within said generator enclosure
1. Ein Gasabsorptions-Kühlgerät umfassend:
a. eine Vielzahl separater Gasabsorptions-Kühlungssysteme anordnungen bestehend aus
einem Generator, einem Kondensator, einem Verdampfer, einem Absorber und Verrohrung,
welche die vorgenannten Teile verbindet, um ein vollständiges Zirkulationssystem für
ein Kühlmittel zu bilden, ein Absorptionsmittel und ein inertes Gas;
b. die Gasabsorptions-Kühlungssysteme sind an ein gemeinsames Gehäuses montiert, die
Verdampfer jedes Systems sind innerhalb eines gemeinsamen, thermisch isolierten Abteils
innerhalb des Gehäuses angeordnet; und
c. der Generator jedes Systems teilt eine gemeinsame Wärmequelle.
2. Das Gerät nach Anspruch 1, wobei die Gasabsorptions-Kühlungssysteme nebeneinander
an einer gemeinsamen Wand des Gehäuses angeordnet sind.
3. Das Gerät nach Anspruch 1, wobei die Wärmequelle aus einem Gasbrenner und einer elektrischen
Widerstandsheizungseinheit besteht.
4. Das Gerät nach Anspruch 3, wobei die elektrische Widerstandsheizungseinheit aus einer
elektrischen Wechselstromwiderstandsheizvorrichtung und einer Gleichstromwiderstandsheizvorrichtung
besteht.
5. Das Gerät nach Anspruch 3, wobei eine einzige Steuer- und/oder Regeleinheit die Art
der Wärme, welche durch die Wärmequelle bereitgestellt wird, auswählt und steuert
und/oder regelt.
6. Das Gerät nach Anspruch 5, ferner einschließend die Steuer- und/oder Regeleinheit
einteilig mit einem Brennerbehälter mit einem einzelnen Gasbrenner und Kamin.
7. Das Gerät nach Anspruch 1, bei dem die Generatoren und Wärmequelle innerhalb einer
gemeinsamen Generatoreinfassung untergebracht sind.
8. Ein Verfahren zum Verbinden einer Vielzahl von Gasabsorptions-Kühlungssystemen mit
einem gemeinsamen Gehäuse, umfassend die Schritte:
a. Bereitstellen einer Vielzahl separater Gasabsorptions-Kühlungssysteme bestehend
aus einem Generator, einem Kondensator, einem Verdampfer, einem Absorber und Verrohrung,
welche die vorgenannten Teile verbindet, um ein vollständiges Zirkulationssystem für
ein Kühlmittel zu bilden, ein Absorptionsmittel und ein inertes Gas;
b. Bereitstellen eines Gehäuses, welches mindestens eine Wand aufweist;
c. Montieren der Gasabsorptions-Kühlungssysteme an das Gehäuse;
d. Bereitstellen einer Wärmequelle;
e. Anordnen der Generatoren und der Wärmequelle in geringem Abstand, so daß die Generatoren
die Wärmequelle teilen;
f. Bereitstellen eines thermisch isolierten Abteils innerhalb des Gehäuses; und
g. Anordnen der Verdampfer gemeinsam innerhalb des thermisch isolierten Abteils.
9. Das Verfahren nach Anspruch 8, einschließend den weiteren Schritt des Montierens der
Gasabsorptions-Kühlungssysteme an eine gemeinsame Wand des Gehäuses.
10. Das Verfahren nach Anspruch 8, wobei die Wärmequelle aus einem Gasbrenner und einer
elektrischen Widerstandsheizungseinheit besteht.
11. Das Verfahren nach Anspruch 8, einschließend die weiteren Schritte des Bereitstellens
einer elektrischen Wechselstromwiderstandsheizvorrichtung und einer elektrischen Gleichstromwiderstandsheizvorrichtung
und Verbindens der elektrischen Wechselstromwiderstandsheizvorrichtung und der elektrischen
Gleichstromwiderstandsheizvorrichtung in der elektrischen Widerstandsheizungseinheit.
12. Das Verfahren nach Anspruch 10, einschließend die weiteren Schritte des Bereitstellens
einer einzigen Steuer- und/oder Regeleinheit, welche geeignet ist, die Wärmeart, welche
durch die Wärmequelle bereitgestellt wird, auszuwählen und zu steuern und/oder zu
regeln, Installierens der Steuer- und/oder Regeleinheit an dem Gehäuse und Herstellens
elektrischer oder mechanischer Steuer- und/oder Regelverbindungen zu der Wärmequelle.
13. Das Verfahren nach Anspruch 12, einschließend die weiteren Schritte des Bereitstellens
eines Brennerbehälters mit einem einzigen Gasbrenner, Kamin, und einer integralen
Steuer- und/oder Regeleinheit und Installierens des Brennerbehälters an dem Gehäuse.
14. Das Verfahren nach Anspruch 8, einschließend die weiteren Schritte des Bereitstellens
einer einzigen Generatoreinfassung, Installierens der Generatoreinfassung an das Gehäuse
und Unterbringens der Generatoren und Wärmequelle innerhalb der Generatoreinfassung.
1. Dispositif de réfrigération à absorption de gaz, comprenant:
a. une pluralité de systèmes de refroidissement à absorption de gaz séparés constitués
par un générateur, un condenseur, un évaporateur, un absorbeur, et des canalisations
raccordant les parties mentionnées précédemment pour former un système de circulation
complet pour un réfrigérant, un liquide d'absorption et un gaz inerte;
b. lesdits systèmes de refroidissement à absorption de gaz étant montés dans une armoire
commune, lesdits évaporateurs de chacun desdits systèmes étant situés dans un compartiment
commun isolé thermiquement à l'intérieur de ladite armoire; et
c. le générateur de chacun desdits systèmes utilisant en commun une source de chaleur.
2. Dispositif selon la revendication 1, dans lequel lesdits systèmes de refroidissement
à absorption de gaz sont disposés le long les uns des autres sur une paroi commune
de l'armoire.
3. Dispositif selon la revendication 1, dans lequel ladite source de chaleur est constituée
par un brûleur à gaz et une unité de chauffage à résistance électrique.
4. Dispositif selon la revendication 3, dans lequel ladite unité de chauffage à résistance
électrique est constituée par un dispositif de chauffage ohmique électrique à courant
alternatif, et un dispositif de chauffage ohmique à courant continu.
5. Dispositif selon la revendication 3, dans lequel une seule unité de commande sélectionne
et commande le type de chaleur délivrée par ladite source de chaleur.
6. Dispositif selon la revendication 5, comprenant en outre ladite unité de commande
réalisée d'un seul tenant avec un boîtier de brûleur comportant un seul brûleur à
gaz et un conduit d'évaluation de fumée.
7. Dispositif selon la revendication 1, dans lequel les générateurs et la source de chaleur
sont logés dans une enceinte commune pour les générateurs.
8. Procédé pour combiner une pluralité de systèmes de refroidissement à absorption de
gaz à une armoire commune comprenant les étapes consistant à:
a. prévoir une pluralité de systèmes de refroidissement à absorption de gaz séparés
constitués par un générateur, un condensateur, un évaporateur et un absorbeur et des
canalisations raccordant les parties mentionnées précédemment pour former un système
de circulation complet pour un réfrigérant, un liquide d'absorption et un gaz inerte;
b. prévoir une armoire comportant au moins une paroi;
c. monter lesdits systèmes de refroidissement à absorption de gaz dans l'armoire;
d. prévoir une source de chaleur;
e. disposer lesdits générateurs et ladite source de chaleur à proximité directe de
manière que lesdits générateurs utilisent en commun ladite source de chaleur;
f. prévoir un compartiment isolé thermiquement à l'intérieur de ladite armoire; et
g. disposer lesdits évaporateurs en commun à l'intérieur dudit compartiment thermiquement
isolé.
9. Procédé selon la revendication 9, incluant l'étape supplémentaire de montage desdits
systèmes de refroidissement à absorption de gaz sur une paroi commune de l'armoire.
10. Procédé selon la revendication 8, selon lequel ladite source de chaleur est constituée
par un brûleur à gaz et une unité formant dispositif de chauffage ohmique électrique.
11. Procédé selon la revendication 8, incluant les autres étapes consistant à prévoir
un dispositif de chauffage ohmique électrique à courant alternatif et un dispositif
de chauffage ohmique électrique à courant continu et à combiner ledit dispositif de
chauffage ohmique électrique à courant alternatif et ledit dispositif de chauffage
ohmique électrique à courant continu dans ladite unité formant dispositif de chauffage
ohmique électrique.
12. Procédé selon la revendication 10, incluant les étapes supplémentaires consistant
à prévoir une seule unité de commande apte à sélectionner et commander le type de
chaleur fournie par ladite source de chaleur, installer ladite unité de commande dans
ladite armoire et établir des connexions de commande électriques ou mécaniques avec
ladite source de chaleur.
13. Procédé selon la revendication 12, incluant les autres étapes consistant à prévoir
un boîtier de brûleur pourvu d'un seul brûleur à gaz, d'un système d'évaluation de
fumée et d'une unité de commande intégrée et installer ledit boîtier de brûleur sur
ladite armoire.
14. Procédé selon la revendication 8, incluant les étapes supplémentaires consistant à
prévoir une seule enceinte pour générateurs, installer ladite enceinte pour générateurs
dans ladite armoire et loger lesdits générateurs et ladite source de chaleur dans
ladite enceinte pour les générateurs.
